Supercurrents and (Partial) Supersymmetry in Adjoint QCD$_2$ and Its Generalizations
Abstract
-dimensional gauge theory coupled to an adjoint Majorana fermion, also known as adjoint QCD, has the surprising feature that at fermion mass it exhibits supersymmetry. In this paper, we obtain a deeper insight into how the supersymmetry works by constructing the gauge invariant, Lorentz covariant supercurrent . Its conservation relies crucially on the presence of a quantum anomaly. We generalize this construction to a class of models where, in addition to an adjoint Majorana fermion of an appropriate mass, the gauge theory is coupled to some collection of massless fermions ( may be replaced by a more general gauge group). In general, these models have a supersymmetric massive sector and a non-supersymmetric CFT sector [arXiv:2202.04017], but there are cases in which both sectors are supersymmetric. An example of such a gapless, fully supersymmetric model is gauge theory coupled to three adjoint Majorana fermions, of which two are massless and the third has mass .
Keywords
Cite
@article{arxiv.2507.17138,
title = {Supercurrents and (Partial) Supersymmetry in Adjoint QCD$_2$ and Its Generalizations},
author = {Igor R. Klebanov and Silviu S. Pufu and Benjamin Søgaard and Edward Witten},
journal= {arXiv preprint arXiv:2507.17138},
year = {2026}
}
Comments
41 pages; v2 minor improvements, refs added; v3 minor improvements